论文标题

使用可见光通信的定位:透视弧方法

Positioning Using Visible Light Communications: A Perspective Arcs Approach

论文作者

Zhu, Zhiyu, Guo, Caili, Bao, Rongzhen, Chen, Mingzhe, Saad, Walid, Yang, Yang

论文摘要

可见光定位(VLP)是一种使用照明器作为发射机的精确室内定位技术。特别是,圆形照明是VLP的常见源类型,通常仅将其视为定位点源,同时忽略其几何特性。在本文中,通过可见光通信(VLC)获得的圆形照明器的弧特征和坐标信息是共同用于启用VLC的室内定位的,并提出了一种新颖的视角方法。所提出的方法不依赖任何惯性测量单元,并且没有对用户的角度限制。首先,为一个场景提出了VLC辅助透视圈和ARC算法(V-PCA),在该场景中,用户可以捕获完整的照明器和不完整的场景。考虑到阻塞VLC链接的部分地区的情况,提出了抗封闭式VLC辅助透视弧算法(OA-V-PA)。仿真结果表明,所提出的室内定位算法可以达到95%的定位精度约为10 cm。此外,还实施了基于手机的实验原型,其中提出了融合的图像处理方法。实验结果表明,平均定位精度小于5 cm。

Visible light positioning (VLP) is an accurate indoor positioning technology that uses luminaires as transmitters. In particular, circular luminaires are a common source type for VLP, that are typically treated only as point sources for positioning, while ignoring their geometry characteristics. In this paper, the arc feature of the circular luminaire and the coordinate information obtained via visible light communication (VLC) are jointly used for VLC-enabled indoor positioning, and a novel perspective arcs approach is proposed. The proposed approach does not rely on any inertial measurement unit, and has no tilted angle limitations at the user. First, a VLC assisted perspective circle and arc algorithm (V-PCA) is proposed for a scenario in which a complete luminaire and an incomplete one can be captured by the user. Considering the cases in which parts of VLC links are blocked, an anti-occlusion VLC assisted perspective arcs algorithm (OA-V-PA) is proposed. Simulation results show that the proposed indoor positioning algorithm can achieve a 95th percentile positioning accuracy of around 10 cm. Moreover, an experimental prototype based on mobile phone is implemented, in which, a fused image processing method is proposed. Experimental results show that the average positioning accuracy is less than 5 cm.

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